TY - JOUR
T1 - Female reproductive health monitoring
T2 - evolution from traditional sensors to memristor diagnostic systems
AU - Liu, Dingrui
AU - Sun, Bai
AU - Chen, Qi
AU - Wang, Kun
AU - Wang, Mengna
AU - Ding, Jie
AU - Ren, Xiaobin
AU - Zhang, Junchao
AU - Wang, Song Ling
AU - Li, Xiaojun
AU - Li, Xuelan
N1 - Publisher Copyright:
Copyright © 2024. Published by Elsevier B.V.
PY - 2026/8
Y1 - 2026/8
N2 - Currently, due to the significant complexity and dynamic characteristics of the occurrence, deterioration, and diagnosis of diseases related to the female reproductive system, higher requirements are put forward for monitoring technologies for such diseases, such as timeliness, sensitivity, and multidimensional information collection. Although disease diagnosis methods that rely on laboratory or traditional sensors typically have high accuracy, they still have certain limitations in terms of fast response, easy portability, and real-time detection. Herein, we review the research progress of monitoring technologies for female reproductive health, with a particular focus on the current status and development trends of memristors in the fields of biosensing and disease diagnosis. Because memristors rely on ion-driven resistive switching and are highly sensitive to interfacial physicochemical changes, they provide an emerging platform for rapid, label-free, and highly sensitive electrical transduction of biological signals. In particular, we summarize recent progress using memristors to detect biomolecules and cell types, as well as their emerging applications in reproductive disease diagnosis. We further discuss the potential applications and future development of memristors in gynecological tumor screening and pregnancy monitoring. Therefore, memristor-based sensing strategies may provide a promising direction for next-generation reproductive health monitoring.
AB - Currently, due to the significant complexity and dynamic characteristics of the occurrence, deterioration, and diagnosis of diseases related to the female reproductive system, higher requirements are put forward for monitoring technologies for such diseases, such as timeliness, sensitivity, and multidimensional information collection. Although disease diagnosis methods that rely on laboratory or traditional sensors typically have high accuracy, they still have certain limitations in terms of fast response, easy portability, and real-time detection. Herein, we review the research progress of monitoring technologies for female reproductive health, with a particular focus on the current status and development trends of memristors in the fields of biosensing and disease diagnosis. Because memristors rely on ion-driven resistive switching and are highly sensitive to interfacial physicochemical changes, they provide an emerging platform for rapid, label-free, and highly sensitive electrical transduction of biological signals. In particular, we summarize recent progress using memristors to detect biomolecules and cell types, as well as their emerging applications in reproductive disease diagnosis. We further discuss the potential applications and future development of memristors in gynecological tumor screening and pregnancy monitoring. Therefore, memristor-based sensing strategies may provide a promising direction for next-generation reproductive health monitoring.
KW - Bio-electronic interface
KW - Female reproductive health
KW - Gynecological and obstetric disease monitoring
KW - Memristive biosensing
KW - Point-of-care testing (POCT)
UR - https://www.scopus.com/pages/publications/105041276067
U2 - 10.1016/j.rechem.2026.103543
DO - 10.1016/j.rechem.2026.103543
M3 - 文章
AN - SCOPUS:105041276067
SN - 2211-7156
VL - 28
JO - Results in Chemistry
JF - Results in Chemistry
M1 - 103543
ER -